Liquid transfer device and cosmetic packaging container
The design of the liquid transfer device solves the problems of cumbersome use and inconsistent liquid volume of existing liquid transfer devices, and achieves the effects of convenient quantitative extrusion and avoidance of secondary pollution.
Patent Information
- Application Number
- CN202520253999.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Existing liquid transfer devices are cumbersome to use, and the amount of liquid drawn is not fixed, which can easily lead to waste or increase the number of operations.
The liquid transfer assembly consists of a pump housing, hose, gravity ball, handwheel, and rotor frame. The handwheel is rotated to create a vacuum to draw in the liquid, and the liquid is then quantitatively extruded through the hose. Combined with the plug-in quick-release cap design, it achieves convenient operation and quantitative control.
It enables convenient and quantitative extrusion of liquids, avoids secondary pollution, and is more convenient and hygienic to use.
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Figure CN223902080U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to liquid taking technology field, concretely is liquid taking device and cosmetic packing container. BACKGROUND
[0002] The existing liquid taking device installed on the container needs to be taken off from the container first when using, then needs to squeeze the silica gel head or press the pressing part above the dropper to discharge air to form negative pressure, then the liquid can be sucked.
[0003] The above operation is relatively cumbersome in actual use, and the volume of liquid sucked each time is not fixed due to different degrees of squeezing or pressing by the user each time, too much liquid sucked will cause waste, and too little liquid sucked will increase the number of suction operations.
[0004] Therefore, in view of the above, the existing structure is improved, and the liquid taking device and cosmetic packing container are provided. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing liquid taking device and cosmetic packing container to solve the problems in the background art.
[0006] To achieve the above object, the utility model provides the following technical scheme: a liquid taking device, comprising a liquid taking assembly, the liquid taking assembly comprising a pump shell, a hose, a gravity ball, a hand wheel, a rotor wheel frame and a squeezing wheel, the inner wall of the pump shell is attached with the hose, and the input end of the hose is connected with the gravity ball, the hand wheel is rotatably installed on the outer side of the pump shell, the rotor wheel frame is rotatably installed on the inner side of the pump shell, and the squeezing wheels are symmetrically arranged at the two ends of the rotor wheel frame.
[0007] Further, the hose is made of hollow silica gel material, one end of the hose is connected with the surface mesh of the gravity ball with a hollow structure, and the other end of the hose is connected with the outside through the pump shell.
[0008] Further, the hand wheel on the outer side of the pump shell is coaxially driven with the inner rotor wheel frame through a shaft, and the squeezing wheels at the two ends of the rotor wheel frame are tightly attached to the outer edge of the hose.
[0009] Further, the pump shell is fixed to the top side end of the bottle cap body through a support, and the outer edge of the opening at the bottom end of the bottle cap body is integrally fixed with a flange.
[0010] Further, the side surface of the bottle cap body is arrayed with side grooves, and the inside of the side grooves is movably embedded with a ball.
[0011] Further, the outer side of the bottle cap body is slidably sleeved with a sliding sleeve, and the cross section of the sliding sleeve is a "T" shaped structure with a raised middle part.
[0012] Further, the middle bulge of the T-shaped structure of the sliding sleeve is in abutment with the outer edge of the ball, and the top notch of the T-shaped structure of the sliding sleeve is elastically connected with the bottle cap body through the spring.
[0013] The cosmetic packaging container is provided with the liquid taking device as described above, and comprises a bottle body, an inner cavity of the bottle body is provided with a bottle cavity, and a silk port is arranged at the top of the bottle body.
[0014] Compared with the prior art, the utility model has the following beneficial effects:
[0015] 1、the utility model discloses when using, the user passes through the finger palm and drives the hand wheel of pump shell outside, can drive the rotor wheel frame of pump shell inside rotation, and the extrusion wheel of rotor wheel frame both ends extrudes the hose of pump shell inner wall when moving, to form the vacuum and take the liquid in the bottle cavity through the gravity ball of hose one end, then continue to roll and extrude the liquid from the pump shell export, and the user can rotate the hand wheel according to the demand to control the quantitative extrusion of cosmetic fluid in the bottle cavity, and it is more convenient to use, and because the cosmetic fluid is isolated in the hose interior, does not cause secondary pollution, is cleaner and more sanitary.
[0016] 2、the utility model discloses when using, the bottle cap body and bottle body of the application adopt the quick release structure of plug -in, and only need to pull the sliding sleeve and be buckled in the silk port outside bottle body of bottle cap body when using, and after the hand is released, the middle bulge of the T-shaped structure of sliding sleeve is in abutment with the outer edge of the ball under the spring reset force, so that the ball is embedded in the adjacent silk port gap from the side groove, and the locking of bottle cap body and bottle body can be completed, and vice versa, quick disassembly can be realized, and compared with the conventional technology of screwing in the silk port, it is more convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0017] Fig. 1 It is the whole external structure schematic diagram of the utility model device;
[0018] Fig. 2 It is the split structure schematic diagram of the utility model device;
[0019] Fig. 3 It is the split structure schematic diagram of the liquid taking assembly of the utility model.
[0020] In the drawing: 1, liquid taking assembly;101, pump shell;102, hose;103, gravity ball;104, hand wheel;105, rotor wheel frame;106, extrusion wheel;2, bottle cap body;3, flange;4, side groove;5, ball;6, sliding sleeve;7, spring;8, bottle body;9, bottle cavity;10, silk port. DETAILED DESCRIPTION
[0021] The embodiments of the present application will be further described in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.
[0022] As shown in Figs. 1-3 The liquid taking device comprises a liquid taking assembly 1, the liquid taking assembly 1 comprises a pump shell 101, a hose 102, a gravity ball 103, a hand wheel 104, a rotor wheel frame 105 and a squeezing wheel 106, the inner wall of the pump shell 101 is attached with the hose 102, the input end of the hose 102 is connected with the gravity ball 103, the outer side of the pump shell 101 is rotationally installed with the hand wheel 104, the inner side of the pump shell 101 is rotationally installed with the rotor wheel frame 105, the two ends of the rotor wheel frame 105 are symmetrically provided with the squeezing wheels 106, the hose 102 is made of hollow silica gel material, one end of the hose 102 is in communication with the surface mesh of the gravity ball 103 with a hollow structure, the other end of the hose 102 penetrates through the pump shell 101 and is in communication with the outside, the hand wheel 104 on the outer side of the pump shell 101 is coaxially transmitted with the rotor wheel frame 105 on the inner side through a shaft rod, and the squeezing wheels 106 at the two ends of the rotor wheel frame 105 are closely attached to the outer edge of the hose 102;
[0023] The specific operation is as follows: the user can drive the rotor wheel frame 105 on the inner side of the pump shell 101 to rotate by means of the hand wheel 104 on the outer side of the pump shell 101, the squeezing wheels 106 at the two ends of the rotor wheel frame 105 squeeze the hose 102 on the inner wall of the pump shell 101 when moving, so as to form a vacuum and suck the liquid in the bottle cavity 9 through the gravity ball 103 at one end of the hose 102, then continue to roll to squeeze the liquid out of the outlet of the pump shell 101, the user can rotate the hand wheel 104 to control the quantitative extrusion of the cosmetic fluid in the bottle cavity 9 according to the needs, and the use is more convenient;
[0024] As shown in Figs. 1-3 The pump shell 101 is fixed on the top side end of the bottle cap body 2 through a support, the outer edge of the opening at the bottom end of the bottle cap body 2 is integrally fixed with a flange 3, the side surface of the bottle cap body 2 is arrayed with a side groove 4, the inside of the side groove 4 is movably embedded with a ball 5, a sliding sleeve 6 is slidably sleeved on the outer side of the bottle cap body 2, the cross section of the sliding sleeve 6 is in a "T" shape structure with a middle part rising, the middle part rising of the "T" shape structure of the sliding sleeve 6 abuts against the outer edge of the ball 5, and the top notch of the "T" shape structure of the sliding sleeve 6 is elastically connected with the bottle cap body 2 through a spring 7;
[0025] Specific operation as follows: the bottle cap body 2 and the bottle body 8 adopt the quick disassembly structure of plug-in type, only need to pull up the sleeve 6 and the bottle cap body 2 are buckled in the silk mouth 10 outside the bottle body 8 when using, after hand release, the middle part of the " T " shaped structure of sleeve 6 is contacted with the outer edge of ball 5 under the reset force of spring 7, so that ball 5 is embedded into the gap between adjacent silk mouth 10 from side groove 4, the locking of bottle cap body 2 and bottle body 8 can be completed, vice versa, quick disassembly can be realized, compared with the conventional technology of screwing into the thread, it is more convenient to use.
[0026] The cosmetic packaging container is provided with the liquid taking device, and the liquid taking assembly 1 pumps the fluid by alternately pressing and releasing the elastic conveying hose 102 of the pump, so that the cosmetic fluid is isolated in the hose 102 and no secondary pollution is caused, and the cosmetic fluid is cleaner and more sanitary.
[0027] As shown in the figure, Fig. 2 The cosmetic packaging container comprises a bottle body 8, the bottle cavity 9 is formed in the bottle body 8, and the silk mouth 10 is arranged at the top of the bottle body 8.
[0028] Working principle: when the liquid taking device and the cosmetic packaging container are used, the bottle cap body 2 and the bottle body 8 adopt the quick disassembly structure of plug-in type, only need to pull up the sleeve 6 and the bottle cap body 2 are buckled in the silk mouth 10 outside the bottle body 8 when using, after hand release, the middle part of the " T " shaped structure of sleeve 6 is contacted with the outer edge of ball 5 under the reset force of spring 7, so that ball 5 is embedded into the gap between adjacent silk mouth 10 from side groove 4, the locking of bottle cap body 2 and bottle body 8 can be completed, vice versa, quick disassembly can be realized, compared with the conventional technology of screwing into the thread, it is more convenient to use, the user can rotate the hand wheel 104 outside the pump shell 101 by the finger pad, the rotor wheel frame 105 inside the pump shell 101 is rotated, the squeezing wheel 106 at both ends of the rotor wheel frame 105 extrudes the hose 102 of the inner wall of the pump shell 101 when moving, to form a vacuum and suck the liquid in the bottle cavity 9 through the gravity ball 103 at one end of the hose 102, then the liquid is extruded out of the outlet of the pump shell 101 by continuing to roll, the user can rotate the hand wheel 104 to control the quantitative extrusion of the cosmetic fluid in the bottle cavity 9, it is more convenient to use, and the cosmetic fluid is isolated in the hose 102 and no secondary pollution is caused, and the cosmetic fluid is cleaner and more sanitary.
[0029] The embodiments of the present application are given for the purpose of illustration and description, and are not exhaustive or limit the present application to the disclosed form. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are chosen and described in order to better explain the principles of the present application and practical application, and to enable those of ordinary skill in the art to understand the present application in order to design various embodiments with various modifications suitable for specific purposes.
Claims
1. Liquid removal device comprising a liquid removal assembly (1), characterized in that, The liquid taking assembly (1) comprises a pump shell (101), a hose (102), a gravity ball (103), a hand wheel (104), a rotor wheel frame (105) and a squeeze wheel (106), the inner wall of the pump shell (101) is attached with the hose (102), the input end of the hose (102) is connected with the gravity ball (103), the outer side of the pump shell (101) is rotationally installed with the hand wheel (104), the inner side of the pump shell (101) is rotationally installed with the rotor wheel frame (105), and the both ends of the rotor wheel frame (105) are symmetrically provided with the squeeze wheels (106).
2. The liquid transfer device of claim 1, wherein, The hose (102) is made of hollow silica gel material, one end of the hose (102) is connected with the surface mesh of the gravity ball (103) with a hollow structure, and the other end of the hose (102) penetrates through the pump shell (101) and is connected with the outside.
3. The liquid transfer device of claim 2, wherein, The hand wheel (104) on the outer side of the pump shell (101) is coaxially driven with the inner rotor wheel frame (105) through a shaft rod, and the squeeze wheels (106) at both ends of the rotor wheel frame (105) are tightly attached with the outer edge of the hose (102).
4. The liquid transfer device of claim 3, wherein, The pump shell (101) is fixed on the top side end of the bottle cap body (2) through a support, and the outer edge of the opening at the bottom end of the bottle cap body (2) is integrally fixed with a flange (3).
5. The liquid transfer device of claim 4, wherein, The bottle cap body (2) is arrayed with side grooves (4) on the side surface, and the inside of the side grooves (4) is movably embedded with a ball (5).
6. The liquid transfer device of claim 5, wherein, The outer side of the bottle cap body (2) is slidably sleeved with a sliding sleeve (6), and the cross section of the sliding sleeve (6) is a "T" shaped structure with a middle part rising.
7. The liquid transfer device of claim 6, wherein, The middle part rising of the "T" shaped structure of the sliding sleeve (6) abuts against the outer edge of the ball (5), and the top notch of the "T" shaped structure of the sliding sleeve (6) is elastically connected with the bottle cap body (2) through a spring (7).
8. A cosmetic packaging container characterized by The cosmetic packaging container is provided with the liquid taking device according to any one of claims 1-7, the cosmetic packaging container comprises a bottle body (8), the inside of the bottle body (8) is provided with a bottle cavity (9), and the top of the bottle body (8) is provided with a silk port (10).